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对酶传感器的作用机理和发展过程进行了介绍,综述了碳纳米管修饰酶传感器的最新研究进展.根据碳纳米管和基础电极结合方式的不同,把碳纳米管修饰酶传感器分为不可逆吸附型、糊类、阵列型、共价键合型几类,并对不同类型碳纳米管修饰酶传感器的制备方法、优缺点进行了评述,最后提出了碳纳米管修饰酶传感器的研究发展方向.

参考文献

[1] Updike S J;Hicks G P .The enzyme electrode[J].Nature,1967,214(5092):986-988.
[2] Chi Q;Zhang J;Wang E et al.Direct observation of native and unfold glucose-oxidase structures by scanning-turneling[J].Faraday transactions,1994,90(14):2057-2060.
[3] Wang SG;Zhang Q;Wang R;Yoon SF .A novel multi-walled carbon nanotube-based biosensor for glucose detection.[J].Biochemical and Biophysical Research Communications,2003(3):572-576.
[4] Nugent J M;Santhanam K S V;Rubio A et al.Fast electron transfer kinetics on multiwalled carbon nanotube microbundle electrodes[J].Nano Letters,2001,1(02):87-91.
[5] Azamian B R;Davis J J;Coleman K S et al.Bioelectrochemical single-walled carbon nanotubes[J].Journal of the American Chemical Society,2002,124(43):12664-12665.
[6] 蔡称心,陈静,陆天虹.碳纳米管修饰电极上葡萄糖氧化酶的直接电子转移[J].中国科学B辑,2003(06):511-518.
[7] Wang J;Musameh M;Lin Y .Solubilization of carbon nanotubes by nafion toward the preparation of amperometric biosensors[J].Journal of the American Chemical Society,2003,125(09):2408-2409.
[8] Luong JHT.;Hrapovic S.;Wang D.;Bensebaa F.;Simard B. .Solubilization of multiwall carbon nanotubes by 3-aminopropyltriethoxysilane towards the fabrication of electrochemical biosensors with promoted electron transfer[J].Electroanalysis,2004(1/2):132-139.
[9] Dai YQ;Shiu KK .Glucose biosensor based on multi-walled carbon nanotube modified glassy carbon electrode[J].Electroanalysis,2004(20):1697-1703.
[10] Sabahudin Hrapovic;Yali Liu;Keith B. Male;John H. T. Luong .Electrochemical Biosensing Platforms Using Platinum Nanoparticles and Carbon Nanotubes[J].Analytical Chemistry,2004(4):1083-1088.
[11] 朱玉奴,彭图治,李建平.碳纳米管负载铂颗粒酶电极葡萄糖传感器[J].分析化学,2004(10):1299-1303.
[12] Wang J.;Musameh M. .Carbon nanotube/teflon composite electrochemical sensors and biosensors[J].Analytical chemistry,2003(9):2075-2079.
[13] Joseph Wang;Mustafa Musameh .Enzyme-dispersed carbon-nanotube electrodes:a needle microsensor for monitoring glucose[J].The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry,2003(11):1382-1385.
[14] Maria D. Rubianes;Gustavo A. Rivas .Carbon nanotubes paste electrode[J].Electrochemistry communications,2003(8):689-694.
[15] Federica Valentini;Silvia Orlanducci;Maria Letizia Terranova;Aziz Amine;Giuseppe Palleschi .Carbon nanotubes as electrode materials for the assembling of new electrochemical biosensors[J].Sensors and Actuators, B. Chemical,2004(1/2):117-125.
[16] Gao M.;Dai LM.;Wallace GG. .Biosensors based on aligned carbon nanotubes coated with inherently conducting polymers[J].Electroanalysis,2003(13):1089-1094.
[17] Sofia Sotiropoulou;Nikolas A. Chanoiotakis .Carbon nanotube array-based biosensor[J].Analytical and bioanalytical chemistry,2003(1):103-105.
[18] Kian Ping Loh;Sheng Liang Zhao;Wei De Zhang .Diamond and carbon nanotube glucose sensors based on electropolymerization[J].Diamond and Related Materials,2004(4-8):1075-1079.
[19] Yuehe Lin;Fang Lu;Yi Tu;Zhifeng Ren .Glucose Biosensors Based on Carbon Nanotube Nanoelectrode Ensembles[J].Nano letters,2004(2):191-195.
[20] Tang H;Chen J H;Yao S Z et al.Amperometric glucose biosensor based on adsorption of glucose oxidase at platinum nanoparticlemodified carbon nanotube electrode[J].Analytical Biochemistry,2004,331(01):89-97.
[21] Fernando Patolsky;Yossi Weizmann;Itamar Willner .Long-Range Electrical Contacting of Redox Enzymes by SWCNT Connectors[J].Angewandte Chemie,2004(16):2113-2117.
[22] Liu JQ;Chou A;Rahmat W;Paddon-Row MN;Gooding JJ .Achieving direct electrical connection to glucose oxidase using aligned single walled carbon nanotube arrays[J].Electroanalysis,2005(1):38-46.
[23] Huaiguo Xue;Weilin Sun;Bingjing He .Single-wall carbon manotubes as immobilization material for glucose biosensor[J].Synthetic Metals,2003(4):831-832.
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